Method for preparing nano-inorganic compound flame retardant
A composite flame retardant and nano-inorganic technology, which is applied in the field of preparation of nano-inorganic composite flame retardants, can solve problems such as the influence of mechanical properties of flame retardant composite materials, and achieves improved dispersion effect, improved limiting oxygen index and good compatibility. Effect
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Embodiment 1
[0026] Step 1. Nano-magnesium hydroxide surface polymerization:
[0027] In a 1000L reactor, disperse a certain amount of nano-magnesium hydroxide into methanol, and add nano-cerium oxide, bistrimethylsilylated vinyl phosphate, benzoyl peroxide, polyvinyl alcohol, and methanol in the following proportions etc., heat up, and react at 60-80°C for 6-15 hours to obtain surface-polymerized nano-magnesium hydroxide microsuspension.
[0028] Component Kg
[0029] Nano Magnesium Hydroxide 20
[0031] Bistrimethylsilylated vinyl phosphate 3
[0032] Benzoyl peroxide 0.03
[0033] Polyvinyl alcohol 0.4
[0034] Methanol 200
[0035] Step 2. Compounding:
[0036] In a 1000L reactor, 100Kg of nano-magnesium hydroxide microsuspension, 0.4Kg of N-sulfonic acid propylpyridine p-toluenesulfonate, and 0.3 parts of guanidine carbonate were mixed in the reactor for 18 hours, filtered and dried to obtain the product. Product number M-1.
Embodiment 2
[0038] Step 1. Nano-nanometer magnesium hydroxide surface polymerization:
[0039] In a 1000L reactor, disperse a certain amount of nano-magnesium hydroxide into methanol, and add nano-yttrium oxide, bistrimethylsilylated vinyl phosphate, benzoyl peroxide, polyvinyl alcohol, and methanol in the following proportions , heat up, and react at 60° C. for 15 hours to obtain a surface-polymerized nano-magnesium hydroxide microsuspension.
[0040] Component Kg
[0041] Nano Magnesium Hydroxide 10
[0043] Bistrimethylsilylated vinyl phosphate 1
[0044] Benzoyl peroxide 0.01
[0045] Polyvinyl alcohol 0.1
[0046] Methanol 200
[0047] Step 2. Compounding:
[0048] In a 1000L reactor, 100Kg of nano-magnesium hydroxide microsuspension, 0.1Kg of N-sulfonic acid propylpyridinium p-toluenesulfonate, and 0.1 part of guanidine carbonate were mixed in the reactor for 40 hours, filtered and dried to obtain the product. Product number M-2.
Embodiment 3
[0050] Step 1. Nano-nanometer magnesium hydroxide surface polymerization:
[0051] In a 1000L reactor, disperse a certain amount of nano-magnesium hydroxide into methanol, add nano-praseodymium oxide, bistrimethylsilylated vinyl phosphate, benzoyl peroxide, polyvinyl alcohol, and methanol in the following proportions , heat up, and react at 60-80° C. for 6-15 hours to obtain a surface-polymerized nano-magnesium hydroxide microsuspension.
[0052] Component Parts by weight
[0053] Nano Magnesium Hydroxide 30
[0054] Nano Praseodymium Oxide 2
[0055] Bistrimethylsilylated vinyl phosphate 5
[0056] Benzoyl peroxide 0.05
[0057] Polyvinyl alcohol 0.5
[0058] Methanol 200
[0059] Step 2. Compounding:
[0060] In a 1000L reactor, 100 parts of nano-magnesium hydroxide microsuspension, 1 part of N-propylpyridine p-toluenesulfonate, and 1 part of guanidine carbonate were mixed in the reactor for 10 hours, filtered and dried to obtain the product. Product number M-3.
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